US9733336B2

System for local error compensation in electromagnetic tracking systems

Summary by NHIP

Local metal distortion correction

The method compensates for metal distortions in electromagnetic tracking systems by comparing monitored geometric shapes against a reference shape. An error correction tool surrounding the procedure site includes at least three electromagnetic sensors in a fixed configuration and at least one optical tracking sensor attached at a fixed known position relative to those electromagnetic sensors.

Claim Score by NHIP

Read claim 6, the broadest

Abstract

A system for local metal distortion correction for using an accurate electromagnetic tracking system in a medical environment comprises an electromagnetic field generator monitoring a medical device having a suitable sensor coil. A correction function, derived from an error correction tool, is applied to the position and orientation readings of the sensor coil. The error correction tool comprises a number of electromagnetic sensors arranged in a fixed and known geometric configuration and is placed surrounding the site of the medical procedure. Sensor data is displayed on an imaging system. In addition, a distortion mapping can be done utilizing optical sensors for relative positioning readings along with an electromagnetic tracking system sensor.

US9733336B2, drawing sheet 1
Sheet 1 of 4

Term

3.7 yearsleft in the term

Expires 8 June 2030.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

12 claims: 2 independent, 10 dependent

  1. 1
    A method for local error compensation caused by metal distortions in using an Electromagnetic Tracking System (EMTS) comprising the acts of:generating an electromagnetic field from at least one electromagnetic field generator;monitoring a positional reading of a medical device in an anatomy using a current induced by the electromagnetic field in at least one electromagnetic sensor coil of the medical device;monitoring position readings from at least three electromagnetic sensors of an error correction tool that surrounds a region of interest and is configured to monitor the metal distortions wherein said error correction tool is situated within proximity of said medical device to obtain a monitored geometric shape, wherein the at least three electromagnetic sensors are arranged in a known and fixed configuration forming a reference geometric shape, and wherein said error correcting tool includes at least one optical tracking sensor attached to said error correcting tool in a fixed known position relative to at least one electromagnetic sensor of the at least three electromagnetic sensors;comparing the monitored geometric shape with the reference geometric shape to obtain a comparison result;deriving a correction function from said comparison result, wherein the correction function translates the monitored geometric shape to yield a corrected monitored geometric shape that conforms to the reference geometric shape of the at least three electromagnetic sensors;applying said corrective function to said positional reading of the medical device to compensate for said metal distortions and obtain a corrected positional reading indicating a corrected position of the medical device, wherein the at least one optical tracking sensor is configured to provide optical data in an optical tracking space and the position readings from at least three electromagnetic sensors are in an electromagnetic tracking space;registering the optical tracking space and the electromagnetic tracking space to an imaging system configured to display images of the medical device in the anatomy;andobtaining absolute positions of the at least three electromagnetic sensors based on the registering act.
  2. 6
    Broadest claimClaim Score 23, narrow(NHIP)An electromagnetic tracking system (EMTS) for tracking a medical device through an anatomy comprising:an electromagnetic field generator generating an electromagnetic field for inducing a current in a sensor coil of the medical device to generate a positional reading of the medical device;an error correction tool surrounding a region of interest and comprising at least three electromagnetic sensors arranged in a known configuration forming a reference geometric shape, wherein said error correcting tool includes at least one optical tracking sensor attached to said error correcting tool in a fixed known position relative to at least one electromagnetic sensor of the at least three electromagnetic sensors;anda processor configured to:monitor position readings from the at least three electromagnetic sensors to obtain a monitored geometric shape of the at least three electromagnetic sensors;compare the monitored geometric shape with the reference geometric shape to obtain a comparison result;generate an error correction function from the comparison result, wherein the correction function translates the monitored geometric shape to yield a corrected monitored geometric shape that conforms to the reference geometric shape;apply the error correction function to the positional reading of the medical device to compensate for metal distortions and obtain a corrected positional reading indicating a corrected position of the medical device, wherein the at least one optical tracking sensor is configured to provide optical data in an optical tracking space and the position readings from at least three electromagnetic sensors are in an electromagnetic tracking space;register the optical tracking space and the electromagnetic tracking space to an imaging system configured to display images of the medical device in the anatomy;andobtain absolute positions of the at least three electromagnetic sensors based on the registering act.